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Improving the reliability of closed chamber methodologies for methane emissions measurement in treatment wetlands

机译:提高处理湿地中甲烷排放测量的密闭室方法的可靠性

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Non-homogeneous mixing of methane (NHM) within closed chambers was studied under laboratory conditions. The experimental set-up consisted of a PVC vented chamber of 5.3 litres of effective volume fitted with a power-adjustable 12 V fan. NHM within the chamber was studied according to fan position (top vs lateral), fan airflow strength (23 vs 80 cubic feet per minute) and the mixing time before sample withdrawal (5, 10, 15 and 20 minutes). The potential bias of methane flux densities caused by NHM was addressed by monitoring the difference between linearly expected and estimated flux densities of ca. 400, ca. 800 and ca. 1,600 mg CH_4.m~(-2) d~(-1). Methane within the chamber was under non-homogeneous conditions. Accordingly, methane concentrations at the bottom of the chamber were between 20 to 70% higher than those recorded at the middle or top sections of the chamber, regardless of fan position, fan air-flow strength or time before sample withdrawal. NHM led to notable biases on flux density estimation. Accordingly, flux density estimated from top and middle sampling sections were systematically lower (ca. 50%) than those expected. Flux densities estimated from bottom samples were between 10% higher and 25% lower than expected, regardless of the flux density considered.
机译:在实验室条件下研究了密闭室内甲烷(NHM)的非均匀混合。实验装置包括一个5.3升有效容积的PVC通风室,配有12V功率可调风扇。根据风扇位置(顶部与侧面),风扇气流强度(每分钟23对80立方英尺)和抽取样品之前的混合时间(5、10、15和20分钟)研究了腔室内的NHM。由NHM引起的甲烷通量密度的潜在偏差通过监视ca的线性预期通量密度和估计通量密度之间的差异来解决。 400,约。 800左右1,600毫克CH_4.m〜(-2)d〜(-1)。室内的甲烷处于非均匀条件下。因此,无论风扇位置,风扇气流强度或样品取出前的时间如何,腔室底部的甲烷浓度都比腔室中部或顶部记录的甲烷浓度高20%至70%。 NHM导致通量密度估计存在明显偏差。因此,从顶部和中间采样部分估计的通量密度总体上低于预期(约50%)。不管考虑的通量密度如何,从底部样品估计的通量密度都比预期高10%至25%。

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